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首页> 外文期刊>WSEAS Transactions on Signal Processing >High Performance Steganographic Scheme Applying Time-Varying Convolutional Embedding Codes
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High Performance Steganographic Scheme Applying Time-Varying Convolutional Embedding Codes

机译:时变卷积嵌入码的高性能隐写方案

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摘要

A matrix embedding code was developed as a commonly used steganographic technique in which a parity-check matrix is used to perform embedding. However, a drawback of high decoding complexity for linear block codes by using the maximum-likelihood algorithm is unrealistic. This paper proposes a simple and effective trellis embedding scheme for binary messages. Compared with a matrix embedding algorithm that uses linear block codes, the proposed scheme is more appropriate for embedding messages in the case of linear block codes with a long length. The proposed algorithm uses time-varying convolutional codes as the embedding method and yields a favorable structure of time-varying convolutional codes for steganography. The proposed method employs maximum-likelihood decoding based on trellis construction to identify the coset leader of convolutional codes for large payloads. The experimental results show that the embedding efficiency of the proposed scheme is substantially superior to that of the scheme using linear block codes.
机译:矩阵嵌入代码被开发为常用的隐写技术,其中使用奇偶校验矩阵来执行嵌入。然而,通过使用最大似然算法来对线性分组码进行高解码复杂度的缺点是不现实的。本文提出了一种简单有效的二进制消息网格嵌入方案。与使用线性分组码的矩阵嵌入算法相比,该方案更适合在长度较长的线性分组码情况下嵌入消息。该算法使用时变卷积码作为嵌入方法,并为隐写术提供了时变卷积码的良好结构。所提出的方法采用基于网格构造的最大似然解码来识别大有效载荷的卷积码的同集前导。实验结果表明,该方案的嵌入效率明显优于采用线性分组码的方案。

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